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A first measurement of the Planetary Boundary Layer top in Cali-Colombia: Elastic LiDAR application

机译:Cali-Colombia行星边界层顶部的首次测量:弹性LiDAR应用

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The monitoring of the impact of aerosols in Latin America on a local scale is usually limited due to the infrastructure and instrumentation available. In Colombia, there are two international ground surface monitoring networks, the AErosol RObotic NETwork (AERONET) and the Latin American LIDAR NETwork (LALINET). However, the AERONET performance relies on only one sun photometer which makes measurements distributed among five ground-based stations in different cities such as Bogota and Medellin. On the other hand, LALINET has only one ground-based station formed by an elastic LiDAR system located at Medelli'n. Although Cali is the largest city of Colombian southwestern, with an accelerated grown rate of both urban and vehicular fleet, and counts with the third largest population of this country, is not reached by these networks. Here, we report on the implementation of a monostatic-coaxial multispectral LiDAR system using a pulsed Nd:YAG laser with 450 m.J of average energy at 1064 nm. To perform the atmospheric measurements, this system is capable of spatially resolving elastic backscatter down to 3.75 m with a Pulse Repetition Frequency (PRF) of 10 Hz. We have developed a hybrid algorithm for data analysis by combining the Fitting and Gradient method and the Klett-Fernald algorithm to estimate the Planetary Boundary Layer (PBL) Top and the optical properties of aerosols. This work constitutes the first quantitative atmospheric exploration to study the aerosols dynamics and the PBL in the northwest of South America.
机译:由于可用的基础设施和仪器,通常无法对拉丁美洲的气溶胶对地方规模的影响进行监控。在哥伦比亚,有两个国际地面监测网络,AErosol机器人网络(AERONET)和拉丁美洲LIDAR网络(LALINET)。但是,AERONET的性能仅取决于一台太阳光度计,该光度计可以在波哥大和麦德林等不同城市的五个地面站之间进行测量。另一方面,LALINET仅在Medelli'n拥有一个由弹性LiDAR系统组成的地面站。尽管卡利是哥伦比亚西南地区最大的城市,但城市和车辆的增长速度都在加快,并且是该国第三大人口,但这些网络却无法实现。在这里,我们报告了使用脉冲Nd:YAG激光在1064 nm处平均能量为450 m.J的单轴同轴多光谱LiDAR系统的实施情况。为了执行大气测量,该系统能够以10 Hz的脉冲重复频率(PRF)在空间上解析低至3.75 m的弹性反向散射。我们已经开发了一种混合算法,用于进行数据分析,方法是将“拟合和渐变”方法与Klett-Fernald算法相结合,以估计行星边界层(PBL)顶部和气溶胶的光学特性。这项工作是研究南美洲西北部气溶胶动力学和PBL的第一个定量大气勘探。

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